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拟南芥细胞壁果胶的脱甲酯化在种子萌发中起作用。

Demethylesterification of cell wall pectins in Arabidopsis plays a role in seed germination.

机构信息

Department of Biological Sciences, Simon Fraser University, Burnaby, British Columbia V5A 1S6, Canada.

出版信息

Plant Physiol. 2013 Jan;161(1):305-16. doi: 10.1104/pp.112.205724. Epub 2012 Nov 5.

Abstract

The methylesterification status of cell wall homogalacturonans, mediated through the action of pectin methylesterases (PMEs), influences the biophysical properties of plant cell walls such as elasticity and porosity, important parameters for cell elongation and water uptake. The completion of seed germination requires cell wall extensibility changes in both the radicle itself and in the micropylar tissues surrounding the radicle. In wild-type seeds of Arabidopsis (Arabidopsis thaliana), PME activities peaked around the time of testa rupture but declined just before the completion of germination (endosperm weakening and rupture). We overexpressed an Arabidopsis PME inhibitor to investigate PME involvement in seed germination. Seeds of the resultant lines showed a denser methylesterification status of their cell wall homogalacturonans, but there were no changes in the neutral sugar and uronic acid composition of the cell walls. As compared with wild-type seeds, the PME activities of the overexpressing lines were greatly reduced throughout germination, and the low steady-state levels neither increased nor decreased. The most striking phenotype was a significantly faster rate of germination, which was not connected to altered testa rupture morphology but to alterations of the micropylar endosperm cells, evident by environmental scanning electron microscopy. The transgenic seeds also exhibited an apparent reduced sensitivity to abscisic acid with respect to its inhibitory effects on germination. We speculate that PME activity contributes to the temporal regulation of radicle emergence in endospermic seeds by altering the mechanical properties of the cell walls and thereby the balance between the two opposing forces of radicle elongation and mechanical resistance of the endosperm.

摘要

细胞壁同质半乳糖醛酸甲酯化状态受果胶甲酯酶(PMEs)作用调控,影响植物细胞壁的生物物理特性,如弹性和孔隙率,这些特性是细胞伸长和吸水的重要参数。种子萌发的完成需要胚根本身和围绕胚根的珠孔组织的细胞壁延展性发生变化。在拟南芥(Arabidopsis thaliana)野生型种子中,PME 活性在种皮破裂时达到峰值,但在萌发完成前(胚乳弱化和破裂)下降。我们过表达了一种拟南芥 PME 抑制剂,以研究 PME 在种子萌发中的作用。结果系的种子表现出细胞壁同质半乳糖醛酸甲酯化状态更为致密,但细胞壁的中性糖和糖醛酸组成没有变化。与野生型种子相比,过表达系的 PME 活性在整个萌发过程中大大降低,且稳定状态水平既没有增加也没有减少。最显著的表型是萌发速度明显加快,这与种皮破裂形态的改变无关,而是与珠孔胚乳细胞的改变有关,环境扫描电子显微镜观察到了这一点。转基因种子对脱落酸的敏感性也明显降低,其对萌发的抑制作用降低。我们推测,PME 活性通过改变细胞壁的机械特性,从而改变胚根伸长和胚乳机械阻力之间的平衡,有助于调控内胚乳种子中胚根的出现时间。

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